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10/22/09 - USPTO Class 343 |  20 views | #20090262030 | Prev - Next | About this Page  343 rss/xml feed  monitor keywords

Antenna arrangement

USPTO Application #: 20090262030
Title: Antenna arrangement
Abstract: An antenna arrangement comprises a central part extending in a first plane, an antenna element comprised in an antenna part, which antenna part and antenna element extend from the central part in a second plane, a first counterpoise part, extending from the central part in a third plane, and a second counterpoise part extending from the central part in a fourth plane, the antenna arrangement is arranged in a functional position. The functional position implying that the folded first and second counterpoise parts together represents a counterpoise and the antenna element resonates together with the counterpoise, thus making the whole antenna arrangement serve as an antenna. (end of abstract)



Agent: Harrity & Harrity, LLP - Fairfax, VA, US
Inventor: Jan-Willem ZWEERS
USPTO Applicaton #: 20090262030 - Class: 343702 (USPTO)

Antenna arrangement description/claims


The Patent Description & Claims data below is from USPTO Patent Application 20090262030, Antenna arrangement.

Brief Patent Description - Full Patent Description - Patent Application Claims
  monitor keywords TECHNICAL FIELD

The present invention relates to wireless communication. In particular the present invention relates to an antenna arrangement and a wireless communication device comprising such an antenna arrangement.

BACKGROUND

It is often desirable to provide wireless communication rather than wired communication using cables between related pairs of devices separated by a short distance. Devices that communicate using cables often require the devices to be located in close proximity to each other as dictated in part by the length of the cables. In contrast, wireless communication decreases the amount of cabling between electronic devices and thus increases the ease of use and convenience for the user. Further the wireless communication devices, such as a portable electronic device, may add more security and may be more aesthetic. With wireless communication, the distance between the related devices is generally only limited by the limits of the wireless signal transmission and reception systems. Examples of related pairs of devices include a cordless headsets on the one hand and a telephone, computer, Personal Digital Assistant (PDA), television set, VCR, DVD player, video game player, stereo receiver, CD player, and MP3 player on the other hand. Other examples of related pairs of devices include a computer and its various external devices such as a monitor, printer, keyboard, mouse, telephone and speakers for example.

The portable electronic device comprises a small inbuilt antenna of high performance to perform as required. The antenna enables wireless communication between a radio unit in the portable electronic device and a radio unit in a corresponding unit. In general it is desirable to minimize the size of the portable electronic device so as to provide a device that is as discrete and as practical as possible. Thus the space for the antenna in the portable communication device is reduced almost day by day, resulting in a keen need of improvement for the antenna miniaturization.

The volume within the portable electronic device is governed by industrial design and may place restrictions on both the size of the antenna and the size of the ground plane. However the dimensions of the antenna residing within the portable electronic device are dictated by the wavelengths of the signals that the antenna is to receive and transmit as well as the form of the antenna. Examples of such signal wavelengths are e.g. Bluetooth 2400-2483.5 MHz which corresponds to a wavelength of about 12 cm in free space. Thus the antenna and the portable electronic device are designed with mutual consideration in order to accommodate the antenna within the portable electronic device.

Many types of antenna technologies may be chosen for the internal antenna of the portable electronic device. The selection depends upon the size and shape of the portable communication device volume into which the antenna must fit and the system performance requirements of the antenna.

A commonly known antenna is the T-antenna. The T-antenna comprises two wires, a first vertical or sloping wire and a second straight horizontal wire. The vertical wire is connected to the approximate central of the straight horizontal wire, thus forming the characteristic “T”-shape. The radiation pattern of a T-antenna is Omni-directional, just like a dipole antenna. The T-antenna is easily scalable relative to the used frequency(s). A disadvantage of a stretched-wire ½ wave dipole or T-antenna is the overall physical length of it. This makes it difficult to integrate it into a small product.

Meandered mono pole antennas are also commonly used in portable communication devices. The meandering pattern of the antenna enables a reduction of the overall physical length of the antenna element whilst retaining the same electrical length. Thus the meandered mono pole antenna is more scalable than the stretched wire dipole. The total length of a meandered monopole antenna is preferably chosen to be one quarter of the wavelength of the desired resonant frequency. However, other lengths could also be used for the resonator elements including three quarters, one and one quarter, ⅕\'th etc. A disadvantage of a meandered monopole is still the relative large area it needs. The meandering of the antenna employs a relatively larger area compared to the area employed by a straight wire. Further the space between the meandering lines is unused. If this space is compromised to a minimum the bandwidth of the antenna is also compromised. This largely depends on the gab between the meandering pattern and the number of meanderings.

An Inverted F Antenna (IFA) is a planar antenna, having a low profile or a flat structure, that are commonly employed as internal antennas configured inside portable communication devices, such as handsets, operating in e.g. the 1900 MHz radio frequency band. A conventional Planar Inverted F Antenna (PIFA) includes a radiating element, a wire and a ground plane. The planar inverted F antenna is shaped like the letter F. The planar inverted F antenna, as well as, an inverted F antenna, both requires a relatively large ground plane to work correctly. This significantly limits the scalability of the F antenna types. Further the F antennas suffer from a narrow bandwidth characteristic which is a considerable limitation.

/Thus what is needed is an antenna for use in a portable communication device that meets the required communication performance without or with minimized performance degradation. Further it is highly desirable that the antenna is small, space efficient and light thus avoiding clumsy and unwieldy devices. In the case of the portable communication device being represented by a cordless headset it is further desirable that the antenna has a high efficiency when the headset is put in talk position, i.e. is arranged close to the body of the user.

The antenna should preferable also be configured to allow better placement of control switches, electronic components and/or buttons of the portable communication device. Ideally the antenna is also cost-effective to manufacture and easy to assemble.

SUMMARY

The object of the present invention is to provide an antenna arrangement that is small, space efficient and light whilst still meeting the required communication performance without or with minimized performance degradation.

According to a first aspect of the invention, the object is achieved by an antenna arrangement for wireless communication. The antenna arrangement comprises a central part extending in a first plane and an antenna element comprised in an antenna part which antenna part and antenna element extend from the central part in a second plane. The antenna arrangement further comprises a first counterpoise part extending from the central part in a third plane and a second counterpoise part extending from the central part in a fourth plane. The antenna arrangement is arranged in a functional position. The functional position is obtained when the antenna arrangement is folded such that:

The second plane of the antenna element s principally perpendicular to the first plane of the central part, the third plane of the first counterpoise part, is principally perpendicular to the first plane of the central part and principally perpendicular to the second plane of the antenna element, and the fourth plane of the second counterpoise part is principally perpendicular to the first plane of the central part and principally parallel with the second plane of the antenna element, and principally perpendicular to the third plane of the first counterpoise part. The functional position implies that the folded first and second counterpoise parts together represents a counterpoise and the antenna element resonates together with the counterpoise, thus making the whole antenna arrangement serve as an antenna.

In one embodiment, the antenna arrangement further comprises a third counterpoise part extending from the central part in a fifth plane. The functional position is obtained when the antenna arrangement is folded such that further the fifth plane of the third counterpoise part is principally parallel with the third plane of the first counterpoise part. The functional position implying that the folded first, second and third counterpoise parts together represents a counterpoise and the antenna element resonates together with the counterpoise, thus making the whole antenna arrangement serve as an antenna.

In one embodiment of the antenna arrangement, the antenna element is a T antenna or a monopole.

In one embodiment the antenna element is represented by a conductive material such as e.g. copper.

In one embodiment the functional position is represented by the shape of a vessel, a housing, a box, a container, a case holder, a receptacle, a reservoir.

In one embodiment the antenna arrangement is represented by a printed circuit board, a flexible printed circuit board, a conductive material.

In one embodiment the antenna arrangement comprises holes and/or through going cavities.

In one embodiment antenna arrangement is tuned to a wanted resonation frequency by adjusting the length and width of one or a plural of the arms of the antenna element.



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Patent Applications in related categories:

20090295647 - electronic device and electronic assembly - An electronic assembly and electronic device used for radio frequency communications. The electronic device has a housing and an antenna feed point at least partially enclosed in the housing. There is at least one circuit board enclosed in the housing; an antenna counterpoise is coupled to the feed point. The ...

20090295653 - Antenna and radio communication apparatus - An antenna includes linear electrodes disposed on a surface of a substrate. A surface-mount antenna element including a capacitor is disposed in a non-ground region of a mount board. The capacitor is arranged such that portions of at least one of two linear electrodes face each other with a predetermined ...

20090295650 - Antenna device and wireless communication device - An antenna device includes a first dielectric plate; a radiating element formed on a surface of the first dielectric plate; a second dielectric plate; a first conductive plate formed on a surface of the second dielectric plate; and a magnetic plate provided between a back surface of the first dielectric ...

20090295648 - Antenna diversity systems for portable electronic devices - Antenna diversity systems are provided for portable electronic devices that have wireless communications circuitry and environment sensors. The wireless communications circuitry may include multiple redundant antennas that operate in one or more overlapping radio-frequency communications bands. The environment sensors and redundant antennas may be used in implementing an antenna diversity ...

20090295651 - Internal diversity antenna architecture - Various embodiments of an internal diversity antenna architecture are described. In one embodiment, a wireless device may include a housing enclosing a printed circuit board, a first diversity antenna, and a second diversity antenna internal to the housing. The second diversity antenna may be positioned substantially near the bottom of ...

20090295649 - Mobile communication terminal - There is provided a mobile communication terminal including: a housing of the mobile communication terminal; a film type antenna provided on the surface of the housing; a printed circuit board disposed inside the housing; and a connector electrically connecting the film type antenna and the printed circuit board. ...

20090295652 - Planar antenna and electronic device - Disclosed is a planar antenna, including: a film formed of a planar insulating material; an antenna portion which is a planar conductor on the film; and a ground portion which is a conductor to be grounded, wherein the antenna portion comprises: at least one first short stub; a first antenna ...

20090295646 - Self-resonating antenna - An antenna includes a U-shaped radiator portion having a first extending arm and a second extending arm parallel and adjacent the first extending arm and coupled to the first extending arm by a junction portion, where the first and second extending arms and the junction portion defining a slot. The ...


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Printed antenna
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